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Power Rating and Tools Wear in Milling of Hardened SAE 4340 Steel with Minimum Quantity of Fluid (MQF)

机译:电力额定值和工具磨损铣削硬化SAE 4340钢,最小液体(MQF)

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Currently, many industries are seeking to lower the use of lubricating fluids in machining processes without losing the quality of the workpieces, as an affordable alternative arises the possibility to applicate the minimal quantity of fluid (MQF) technique. This study is focused on interpretation and evaluation of hardened SAE 4340 steel milling process using the MQF at different flow rates compared to conventional lubrication. With the implementation of a data acquisition system to measure the milling dynamic, it was possible to know all the present variations on the power rating during the process. After the tests, an appropriate statistical analysis of results was applied in order to better understand the effects of the MQF and correlate the output variables. Moreover, this project allows us to have an applicable vision of cutting process costs and study an important industrial material. As a result, the measurement and validation of the use of MQF in tangential and frontal milling process of hardened steels show good correlation with the dimension of carbide cutters wears and influence on the level of power rating, as it is detailed in this paper.
机译:目前,许多行业正在寻求降低在加工过程中使用润滑液而不失去工件的质量,因为实惠的替代方案产生了应用最小量的流体(MQF)技术的可能性。该研究专注于使用MQF以不同流速的钢化SAE 4340钢研磨过程的解释和评估与常规润滑相比不同的流速。通过实现数据采集系统来测量铣削动态,可以知道该过程期间功率额定值的所有目前变化。在测试之后,应用了对结果的适当统计分析,以便更好地理解MQF的效果并将输出变量与输出变量相关联。此外,该项目使我们能够对切割过程成本进行适用的愿景,并研究重要的工业材料。结果,在硬化钢的切向和正面铣削过程中使用MQF的测量和验证表现出良好的相关性与碳化物切割器的尺寸磨损和对电力额定水平的影响,如本文详述。

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